A partial solar eclipse will occur at the Moon's descending node of orbit on Sunday, November 4, 2040, with a magnitude of 0.8074. A solar eclipse occurs when the Moon passes between Earth and the Sun, thereby totally or partly obscuring the image of the Sun for a viewer on Earth. A partial solar eclipse occurs in the polar regions of the Earth when the center of the Moon's shadow misses the Earth. A partial eclipse will be visible for parts of North America, Central America, the Caribbean, and northern South America.
Images Animated path
Eclipse timing
Places experiencing partial eclipse
Eclipse details Shown below are two tables displaying details about this particular solar eclipse. The first table outlines times at which the Moon's penumbra or umbra attains the specific parameter, and the second table describes various other parameters pertaining to this eclipse.
Eclipse season
This eclipse is part of an eclipse season, a period, roughly every six months, when eclipses occur. Only two (or occasionally three) eclipse seasons occur each year, and each season lasts about 35 days and repeats just short of six months (173 days) later; thus two full eclipse seasons always occur each year. Either two or three eclipses happen each eclipse season. In the sequence below, each eclipse is separated by a fortnight.
Related eclipses
Eclipses in 2040 A partial solar eclipse on May 11. A total lunar eclipse on May 26. A partial solar eclipse on November 4. A total lunar eclipse on November 18.
Metonic Preceded by: Solar eclipse of January 16, 2037 Followed by: Solar eclipse of August 23, 2044
Tzolkinex Preceded by: Solar eclipse of September 23, 2033 Followed by: Solar eclipse of December 16, 2047
Half-Saros Preceded by: Lunar eclipse of October 30, 2031 Followed by: Lunar eclipse of November 9, 2049
Tritos Preceded by: Solar eclipse of December 5, 2029 Followed by: Solar eclipse of October 4, 2051
Solar Saros 124 Preceded by: Solar eclipse of October 25, 2022 Followed by: Solar eclipse of November 16, 2058
Inex Preceded by: Solar eclipse of November 25, 2011 Followed by: Solar eclipse of October 15, 2069
Triad Preceded by: Solar eclipse of January 5, 1954 Followed by: Solar eclipse of September 6, 2127
Solar eclipses of 2040–2043 This eclipse is a member of a semester series. An eclipse in a semester series of solar eclipses repeats approximately every 177 days and 4 hours (a semester) at alternating nodes of the Moon's orbit.
Saros 124 This eclipse is a part of Saros series 124, repeating every 18 years, 11 days, and containing 73 events. The series started with a partial solar eclipse on March 6, 1049. It contains total eclipses from June 12, 1211 through September 22, 1968, and a hybrid eclipse on October 3, 1986. There are no annular eclipses in this set. The series ends at member 73 as a partial eclipse on May 11, 2347. Its eclipses are tabulated in three columns; every third eclipse in the same column is one exeligmos apart, so they all cast shadows over approximately the same parts of the Earth. The longest duration of totality was produced by member 39 at 5 minutes, 46 seconds on May 3, 1734. All eclipses in this series occur at the Moon’s descending node of orbit.
Metonic series The metonic series repeats eclipses every 19 years (6939.69 days), lasting about 5 cycles. Eclipses occur in nearly the same calendar date. In addition, the octon subseries repeats 1/5 of that or every 3.8 years (1387.94 days). All eclipses in this table occur at the Moon's descending node.
Tritos series This eclipse is a part of a tritos cycle, repeating at alternating nodes every 135 synodic months (≈ 3986.63 days, or 11 years minus 1 month). Their appearance and longitude are irregular due to a lack of synchronization with the anomalistic month (period of perigee), but groupings of 3 tritos cycles (≈ 33 years minus 3 months) come close (≈ 434.044 anomalistic months), so eclipses are similar in these groupings.
Inex series This eclipse is a part of the long period inex cycle, repeating at alternating nodes, every 358 synodic months (≈ 10,571.95 days, or 29 years minus 20 days). Their appearance and longitude are irregular due to a lack of synchronization with the anomalistic month (period of perigee). However, groupings of 3 inex cycles (≈ 87 years minus 2 months) comes close (≈ 1,151.02 anomalistic months), so eclipses are similar in these groupings.
References
External links http://eclipse.gsfc.nasa.gov/SEplot/SEplot2001/SE2040Nov04P.GIF
